Human genetic evidence demonstrates that WNT1 mutations cause osteogenesis imperfecta (OI) and early‐onset osteoporosis, implicating WNT1 as a major regulator of bone metabolism. However, its main cellular source and mechanisms of action in bone remain elusive. We generated global and limb bud mesenchymal cell–targeted deletion of Wnt1 in mice. Heterozygous deletion of Wnt1 resulted in mild trabecular osteopenia due to decreased osteoblast function. Targeted deletion of Wnt1 in mesenchymal progenitors led to spontaneous fractures due to impaired osteoblast function and increased bone resorption, mimicking the severe OI phenotype in humans with homozygous WNT1 mutations. Importantly, we showed for the first time that Wnt1 signals strictly in...
Wnt signalling has an essential role in regulating bone formation and remodelling during embryonic d...
We report that hypofunctional alleles of WNT1 cause autosomal-recessive osteogenesis imperfecta, a c...
Osteocytes, >90% of the cells in bone, lie embedded within the mineralized matrix and coordinate ost...
Compelling clinical data together with genetically modified mouse models have demonstrated that Wnt1...
Wnt signaling is important for proper embryonic development, shaping cell fate and migration, stem c...
The recent identification of homozygous WNT1 mutations in individuals with osteogenesis imperfecta t...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...
Abstract The recent identification of homozygous WNT1 mutations in individuals with osteogenesis imp...
SummaryInactivation of β-catenin in mesenchymal progenitors prevents osteoblast differentiation; ina...
Wnt1 is one of the several glycoproteins activating Wnt signaling, critical for normal skeletal deve...
We report that hypofunctional alleles of WNT1 cause autosomal-recessive osteogenesis imperfecta, a c...
Inactivation of beta-catenin in mesenchymal progenitors prevents osteoblast differentiation; inactiv...
The WNT-signaling pathway is involved in cellular and tissue functions that control such diverse pro...
Abstract. Wnt signaling is involved not only in embryonic development but also in maintenance of hom...
Osteoblast differentiation is predominantly regulated by the WNT/β-catenin signaling (canonical WNT ...
Wnt signalling has an essential role in regulating bone formation and remodelling during embryonic d...
We report that hypofunctional alleles of WNT1 cause autosomal-recessive osteogenesis imperfecta, a c...
Osteocytes, >90% of the cells in bone, lie embedded within the mineralized matrix and coordinate ost...
Compelling clinical data together with genetically modified mouse models have demonstrated that Wnt1...
Wnt signaling is important for proper embryonic development, shaping cell fate and migration, stem c...
The recent identification of homozygous WNT1 mutations in individuals with osteogenesis imperfecta t...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...
Abstract The recent identification of homozygous WNT1 mutations in individuals with osteogenesis imp...
SummaryInactivation of β-catenin in mesenchymal progenitors prevents osteoblast differentiation; ina...
Wnt1 is one of the several glycoproteins activating Wnt signaling, critical for normal skeletal deve...
We report that hypofunctional alleles of WNT1 cause autosomal-recessive osteogenesis imperfecta, a c...
Inactivation of beta-catenin in mesenchymal progenitors prevents osteoblast differentiation; inactiv...
The WNT-signaling pathway is involved in cellular and tissue functions that control such diverse pro...
Abstract. Wnt signaling is involved not only in embryonic development but also in maintenance of hom...
Osteoblast differentiation is predominantly regulated by the WNT/β-catenin signaling (canonical WNT ...
Wnt signalling has an essential role in regulating bone formation and remodelling during embryonic d...
We report that hypofunctional alleles of WNT1 cause autosomal-recessive osteogenesis imperfecta, a c...
Osteocytes, >90% of the cells in bone, lie embedded within the mineralized matrix and coordinate ost...